Ditemukan 3 dokumen yang sesuai dengan query
Zidan Fadillah
"Teknologi
Internet of Things (IoT) memiliki potensi untuk merevolusi berbagai industri, termasuk pemantauan kualitas air. Penelitian ini mengusulkan sebuah sistem pemantauan kualitas air berbasis IoT menggunakan teknologi Low-Power Wide Area Network (LPWAN). Sistem tersebut terdiri dari perangkat IoT yang dilengkapi dengan sensor untuk mengukur berbagai parameter kualitas air, seperti pH, suhu, dan kekeruhan. Data yang terkumpul dikirimkan ke server pusat menggunakan teknologi LoRaWAN, yang memungkinkan komunikasi jarak jauh dengan konsumsi daya rendah. Data kemudian dianalisis dan diproses untuk memberikan informasi real-time tentang kualitas air kepada pemangku kepentingan. Sistem yang diajukan memberikan solusi efektif dan efisien untuk pemantauan kualitas air di daerah yang masih sulit terjangkau sinyal internet, di mana sistem pemantauan konvensional mungkin kurang efektif apabila dilakukan karena infrastruktur yang terbatas.
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The Internet of Things (IoT) technology has the potential to revolutionize various industries, including water quality monitoring. This research proposes an IoT-based water quality monitoring system using Low-Power Wide Area Network (LPWAN) technology. The system consists of IoT devices equipped with sensors to measure various water quality parameters, such as pH, temperature, and turbidity. The collected data is sent to the central server using LoRaWAN technology, which allows for long-range communication with low power consumption. The data is then analyzed and processed to provide real-time information on water quality to stakeholders. The proposed system provides an effective and efficient solution for water quality monitoring in remote areas with limited internet access, where conventional monitoring systems may be less effective due to limited infrastructure."
Depok: Fakultas Teknik Universitas Indonesia, 2023
S-pdf
UI - Skripsi Membership Universitas Indonesia Library
Alahi, Md Eshrat E.
"This book presents the design and development of an Internet of Things (IoT) enabled, smart sensor to detect nitrate contamination in natural water. It considers three different sensors designed, fabricated and configured for nitrate detection: a Graphite/PDMS and Si-based MEMS sensors, and aFR4-based sensor. It also introduces a selective polymer material developed by means of the ion imprinting polymerization technique that was used as a coating on the Si-based MEMS sensor. Further, the book discusses the development of a smart sensing system that can be used to remotely monitor the nitrate concentration in any water. Fully explaining all the techniques used, the book is of interest to engineers, researchers and scientists working in the field of the water-quality measurement."
Switzerland: Springer Nature, 2019
e20509770
eBooks Universitas Indonesia Library
Jamalipour, Abbas
"A significant and convenient approach to detection and analysis of biological, environmental and agricultural items is the harnessing of features in widely available smartphones to create field-deployable scientific instruments, allowing measurements to be made onsite and in real-time. This book will cover a number of self-contained smartphone instruments with the particular focus on spectroscopic-based measurements. Measurement and analysis on precision of such low-cost instrumentations are provided to compare with more expensive commercial equipment.
This book also discusses some limitations, possible recommendations and scopes for further instrumentations using smartphones and other smart devices. Particularly, the opportunity to integrate the devices into the global Internet-of-Things (IoT) platform will be discussed.
Researchers and instrumentation designers in optical and photonic sensing, smart and IoT-based sensing, biological and environmental analysts, agricultural, and food quality researchers (and public health authorities) will find this book useful as reference. Students in science and engineering disciplines for teaching and educational purposes will also find this book useful as a secondary textbook."
Switzerland: Springer Cham, 2019
e20502883
eBooks Universitas Indonesia Library